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Radiation Effects and Defects in Solids

来源: 树人论文网 浏览次数:166次
创刊时间:1989
周期:Monthly
ISSN:1042-0150
影响因子:0.636
是否开源:No
年文章量:86
录用比:容易
学科方向:核科学技术
研究方向:物理
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Radiation Effects and Defects in Solids杂志中文介绍

该杂志涵盖了辐射和等离子体科学的广泛主题。其贡献范围包括:辐射物理学;放射化学、放射生物学和医学辐照的物理效应,包括对放射细胞变性的研究;辐射的光学、电学和机械效应以及它们的次要效应,例如表面的扩散和粒子发射;等离子体技术和等离子体现象。在等离子体科学方面,该杂志涵盖了聚变、空间和低温等离子体的所有领域。等离子体该杂志涵盖了等离子体科学和技术的所有领域。论文涉及核聚变理论、模型与实验、托卡马克、恒星发生器、其他核聚变装置、等离子体平衡与输运、改进模态等。在考虑核聚变能源的同时,该杂志打算特别强调能源生产的环境方面。在空间等离子体上,它涵盖了电离层、磁层、太阳等离子体、辐射带、太阳风、空间天气效应以及低层大气的物理学。该杂志还涵盖了实验室低温等离子体物理、激光等离子体相互作用、等离子体加速器和等离子体处理技术的所有领域。辐射主题包括:辐射引起的缺陷的原子和电子特性;这种缺陷对晶格性质和过程的影响;晶格缺陷方法对固态反应如聚类、沉淀、激光退火和杂质的作用;缺陷动力学在非稳态,如粒子下或电磁辐射,或在快速温度变化;辐射增强氧化;与非晶态材料的亚稳态性质和表面修饰有关的问题。所有发表在《辐射效应与固体缺陷》上的研究论文都经过了严格的同行评审,评审基于编辑的初步筛选和匿名评审。

Radiation Effects and Defects in Solids杂志英文介绍

The Journal covers a wide range of topics under radiation and plasma sciences. The range of contributions encompasses: radiation physics; radiochemistry, radiobiology and physical effects of medical irradiation, including research on radiative cell degeneration; optical, electrical and mechanical effects of radiation, and their secondary effects such as diffusion and particle emission from surfaces; plasma techniques and plasma phenomena. On plasma science the Journal covers all areas of fusion, space and low temperature plasmas.Plasma The Journal covers all areas of Plasma Science and Technology. It solicits papers on fusion theory, modelling and experiments, tokamak, stellarator, other fusion devices, plasma equilibrium and transport, improved modes, etc. While considering fusion energy the journal intends to give a special emphasis on the environmental aspects of the energy production. On space plasma it covers all areas – ionosphere, magnetosphere, solar plasma, radiation belt, solar wind, space weather effects and also the physics of the lower atmosphere. The Journal also covers all areas of laboratory low temperature plasma physics, laser-plasma interactions, plasma accelerators and plasma processing technology. Radiation Topics covered include: atomic and electronic properties of defects induced by radiation; the influence of such defects on lattice properties and processes; the lattice-defect approach to solid state reactions such as clustering, precipitation, laser annealing and the role of impurities; defect dynamics in a non-steady state such as under-particle or electromagnetic irradiation, or during rapid temperature change; radiation enhanced oxidation; problems associated with the metastable nature of amorphous materials and surface modifications. All research articles published in Radiation Effects and Defects in Solids have undergone rigorous peer review, based on initial screening by the Editor and refereeing by anonymous referees.

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